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Bright-field Nanoscopy: Visualizing Nano-structures with Localized Optical Contrast Using a Conventional Microscope

机译:明场纳米显微镜:使用常规显微镜观察具有局部光学对比的纳米结构

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摘要

Most methods for optical visualization beyond the diffraction limit rely on fluorescence emission by molecular tags. Here, we report a method for visualization of nanostructures down to a few nanometers using a conventional bright-field microscope without requiring additional molecular tags such as fluorophores. The technique, Bright-field Nanoscopy, is based on the strong thickness dependent color of ultra-thin germanium on an optically thick gold film. We demonstrate the visualization of grain boundaries in chemical vapour deposited single layer graphene and the detection of single 40 nm Ag nanoparticles. We estimate a size detection limit of about 2 nm using this technique. In addition to visualizing nano-structures, this technique can be used to probe fluid phenomena at the nanoscale, such as transport through 2D membranes. We estimated the water transport rate through a 1 nm thick polymer film using this technique, as an illustration. Further, the technique can also be extended to study the transport of specific ions in the solution. It is anticipated that this technique will find use in applications ranging from single-nanoparticles resolved sensing to studying nanoscale fluid-solid interface phenomena.
机译:超出衍射极限的大多数光学可视化方法都依赖于分子标签发出的荧光。在这里,我们报告了一种使用常规明场显微镜可视化至几纳米的纳米结构的方法,而无需使用其他分子标签,例如荧光团。明场纳米技术是基于光学上较厚的金膜上的超薄锗强烈的厚度依赖性颜色。我们展示了化学气相沉积单层石墨烯中晶界的可视化以及单个40 nm Ag纳米颗粒的检测。我们估计使用此技术的尺寸检测极限约为2 nm。除了可视化纳米结构外,该技术还可用于探测纳米级的流体现象,例如通过2D膜的传输。作为例证,我们估计了使用该技术通过1 nm厚聚合物膜的水传输速率。此外,该技术还可以扩展为研究溶液中特定离子的迁移。预计该技术将在从单纳米粒子分辨传感到研究纳米级流固界面现象的应用中找到应用。

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